Department of Marine Biology and Ecology, Rosenstiel School of Marine and Atmospheric Science, University of Miami, 4600 Rickenbacker Causeway, Miami, FL, 33149, USA.
Fish Physiol Biochem. 2022 Jun;48(3):617-630. doi: 10.1007/s10695-022-01083-3. Epub 2022 May 18.
In the Gulf toadfish (Opsanus beta), the serotonin (5-HT) transporter (SERT) is highly expressed in the heart, and the heart and gill both demonstrate the capacity for SERT-mediated uptake of 5-HT from the circulation. Because 5-HT is a potent vasoconstrictor in fish, we hypothesized that hypoxia exposure may increase 5-HT uptake by these tissues-and increase excretion of 5-HT-to prevent branchial vasoconstriction that would hamper gas exchange. Spot sampling of blood, bile, and urine revealed that fish exposed to chronic hypoxia (1.83 ± 0.12 mg·L O for 24-26 h) had 41% lower plasma 5-HT in the ventral aorta (immediately following the heart) than in the hepatic vein (immediately before the heart), suggesting enhanced cardiac 5-HT uptake during hypoxia. 5-HT concentrations in the bile were greater than those in the urine, but there were no effects of acute (1.31 ± 0.06 mg·L O for 25 min) or chronic hypoxia on 5-HT levels in these fluids. In 5-HT radiotracer experiments, the presence of tracer in the bile decreased upon hypoxia exposure, but, surprisingly, neither acute nor chronic hypoxia-induced changes in [H]5-HT uptake in the heart, gill, or other tissues. Given the likely impact of the hypoxia exposure on metabolic rate, future studies should examine the effects of a milder hypoxia exposure on 5-HT uptake into these tissues and the role of 5-HT degradation.
在海湾蟾鱼(Opsanus beta)中,血清素(5-HT)转运体(SERT)在心脏中高度表达,心脏和鳃都具有通过循环摄取 SERT 介导的 5-HT 的能力。因为 5-HT 是鱼类中的一种强效血管收缩剂,所以我们假设低氧暴露可能会增加这些组织中 5-HT 的摄取,并增加 5-HT 的排泄,以防止鳃血管收缩,从而阻碍气体交换。对血液、胆汁和尿液的抽样显示,暴露于慢性低氧(1.83±0.12 mg·L O 24-26 h)的鱼在腹主动脉(紧接心脏之后)中的血浆 5-HT 比在肝静脉(紧接心脏之前)中的低 41%,这表明低氧期间心脏 5-HT 摄取增强。胆汁中的 5-HT 浓度高于尿液中的浓度,但急性(1.31±0.06 mg·L O 25 min)或慢性低氧对这些液体中 5-HT 水平均无影响。在 5-HT 放射性示踪剂实验中,暴露于低氧时胆汁中的示踪剂减少,但令人惊讶的是,急性或慢性低氧均未引起心脏、鳃或其他组织中 [H]5-HT 摄取的变化。鉴于低氧暴露对代谢率的可能影响,未来的研究应检查轻度低氧暴露对这些组织中 5-HT 摄取的影响以及 5-HT 降解的作用。